Cite this article:
Shi Hao-Sheng, Vahram L. Grigoryan. Spin transport in a Zigzag normal/ferromagnetic graphene junctionJ. Chin. Phys. B, 2015, 24(5): 057202.
| Shi Hao-Sheng, Vahram L. Grigoryan. Spin transport in a Zigzag normal/ferromagnetic graphene junctionJ. Chin. Phys. B, 2015, 24(5): 057202. |
Spin transport in a Zigzag normal/ferromagnetic graphene junction
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Abstract
We study magnetic proximity effect induced low-energy spin transport in the normal/ferromagnetic junction of a semi-infinite zigzag graphene nanoribbon. Due to the absence of a spin flip in a single interface, the spin transfer in this model can be described by the “two-spin channel” model. We identify each spin channel as either a perfect conducting or a non-conducting channel. This feature leads to spin filter in symmetric zigzag graphene nanoribbon and spin precession in antisymmetric zigzag graphene nanoribbon, and helps to directly determine the exchange-splitting intensity directly, even without an external auxiliary bias. -
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